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Biomedical subjects

Y Saeki

Publications and source records attributed to Y Saeki.

At least 109 records · Page 6Linked to original sources

Effect of dobutamine of ventriculoarterial coupling in acute regional myocardial ischemia in dogs.

We assessed the effect of dobutamine on left ventricoarterial coupling during acute regional ischemia. Using a conductance catheter, we analyzed the end-systolic pressure-volume relation (ESPVR) in anesthetized dogs. We calculated the slope of ESPVR (Ees), the slope of the end-systolic pressure-stroke volume relation (Ea), (Ea/Ees) and the ratio (work efficiency) of external work to pressure-volume area at base-line during ischemia induced by occlusion of the left anterior descending coronary artery and during low-dose (1-3 micrograms.min-1.kg-1) and high-dose (4-10 micrograms.min-1.kg-1)dobutamine infusions with ischemia. ESPVR shifted to the right without a change in Ees during ischemia. Dobutamine caused dose-dependent increases in Ees but did not affect the intercept of ESPVR. During ischemia, Ea/Ees increased and work efficiency decreased. Low-dose dobutamine was associated with a return in control for Ea/Ees and work efficiency. High-dose dobutamine increased Ees and Ea but produced no further increase in Ea/Ees or work efficiency. Low-dose dobutamine would appear to be the preferable regimen to achieve the optimal ventriculoarterial coupling in acute regional ischemia associated with mismatched ventriculoarterial coupling and depressed left ventricular work efficiency.

Acute Disease↗

Inhibitory effects of funoran on the adherence and colonization of mutans streptococci.

Funoran, a sulfated polysaccharide extracted from the seaweed Gloiopeltis furcata strongly inhibited the absorption of mutans streptococci to saliva-coated hydroxyapatite (S-HA), but enhanced that of Streptococcus sanguis ATCC 10556 and Streptococcus oralis ATCC 10557. Furthermore, funoran had a strong desorption activity against mutans streptococci preadsorbed to S-HA. In the presence of sucrose, the absorption of cells of Streptococcus sobrinus B13, Streptococcus mutans Ingbritt, and S. mutans MT8148R to S-HA was strongly inhibited by 0.01% funoran. The colonization of S. sobrinus 6715 inoculated on the molar teeth of experimental rats that were administered funoran was less frequent than that in a funoran-free group. The mean buccal and lingual, sulcal, and total caries scores of rat groups administered funoran were significantly lower than those of the funoran-free group.

Adsorption↗

Decrease of the D3 dopamine receptor mRNA expression in lymphocytes from patients with Parkinson's disease.

We investigated the dopamine receptor (DAR) mRNA expression in peripheral blood lymphocytes from 45 patients with Parkinson's disease (PD) and 21 age-matched controls using the quantitative reverse transcription and polymerase chain reaction method. Beta-actin mRNA was used as an internal control to evaluate the relative expression level of the DAR mRNA. There was a statistically significant decrease of the D3 dopamine receptor (D3R) mRNA expression in PD patients compared with that in controls. There was no change in expression of the D5 dopamine reception mRNA in PD patients. A further binding study showed reduction of the D3R binding sites in PD lymphocytes. The decrease of the D3R mRNA expression correlated with the degree of clinical severity in PD patients.

Actins↗

Inhibitory effects of funoran on the adherence and colonization of oral bacteria.

Funoran, a sulfated polysaccharide extracted from the seaweed Gloiopeltis furcata, strongly inhibited the adsorption of mutans streptococci to saliva-coated hydroxyapatite (S-HA) used as an experimental pellicle and strongly desorbed cariogenic mutans streptococci pre-adsorbed to S-HA. Colonization inhibition and anticariogenic effects of funoran were also investigated in experimental rats. The colonization of Streptococcus cricetus E49 inoculated on the molar teeth of experimental rats administered funoran was less frequent than that in a funoran-free group. The mean buccal and lingual, sulcal, and total caries scores of rat groups administered funoran were significantly lower than those of the funoran-free group. The inhibitory effect of funoran on periodontopathic bacterial attachment was studied in vitro. Funoran strongly inhibited the adsorption of Porphyromonas gingivalis, Fusobacterium nucleatum, and actinomyces species to S-HA and collagen-coated hydroxyapatite (Co-HA) and apparently inhibited their attachment to the human gingival fibroblast Gin-1 cell line. The present study indicates that funoran inhibits colonization by cariogenic and periodontopathic bacteria and excludes them from human oral cavity.

Actinomyces viscosus↗

Four Cases of Familial Breast Cancer.

We report 4 families with a remarkable history of cancer, including bilateral breast cancer, early onset breast cancer under age 40, and one or more cancers at other sites. We detected a second malignancy in 4 probands during follow-up after the first operation(families 1, 2, 3 and 4), and could salvage 3 of them (families 2, 3 and 4). We also found 2 family members with cancer by surveillance of family 4 and they underwent suitable treatment (elder sister and elder brother). In conclusion, a knowledge of the natural history of familial breast cancer with particular attention to age at onset and bilaterality may allow for the development of more accurately targeted surveillance, genetic counseling, and management strategies.

Journal Article↗

Increased experimental pulmonary metastasis in pregnant mice.

The effect of pregnancy on experimental pulmonary metastasis was studied. Compared to the incidence of pulmonary metastasis induced by G6 cells in non-pregnant mice, the incidence of such metastasis was found to be greatly enhanced when the cells were injected i.v. in the latter half of pregnancy. The maximum enhancement was seen on the 15th day of pregnancy. The incidence of pulmonary metastasis returned to the level observed in non-pregnant mice when the cells were injected 4 days after parturition. Pregnancy also significantly increased the incidence of pulmonary metastasis of 2 other cell lines (3LL and Colon 26). Injection of G6 cells after hysterectomy performed on the 15th day of pregnancy resulted in decreased lung colonization, similar to that seen after parturition. Quantificative analysis of the arrest of G6 cells labeled with [125I]-5-iodo-2'-deoxyuridine in the lungs showed that the tumor-cell clearance from the lungs during the 24-72 hr after tumor-cell injection was much slower in pregnant than in non-pregnant mice. The continuous administration of beta-estradiol and/or progesterone, which maintained serum levels of the hormones equivalent to those prevailing on the 15th day of pregnancy, did not affect the lung colonization of G6 cells. Tumor-cell-platelet aggregation was more extensive with platelets obtained from mice at the 15th day of pregnancy than with those from non-pregnant mice. When platelets isolated from pregnant mice were injected into normal mice 5 min before G6 injection, lung metastasis was also enhanced. These findings suggest that a pregnant host is handicapped with regard to pulmonary metastasis, this being partly due to increased platelet-aggregating activity in response to tumor cells.

Adenocarcinoma↗

Effects of thromboxane A2 analogue on vascular resistance distribution and permeability in isolated blood-perfused dog lungs.

This study was designed to determine the effects of thromboxane A2 (TxA2) on the distribution of vascular resistance, lung weight, and microvascular permeability in isolated dog lungs perfused at a constant pressure with autologous blood. The stable TxA2 analogue (STA2; 30 micrograms, n = 5) caused an increase in pulmonary capillary pressure (Pc) assessed as double-occlusion pressure to 14.0 +/- 0.4 mmHg from the baseline of 7.9 +/- 0.3 mmHg with progressive lung weight gain. Pulmonary vascular resistance increased threefold exclusively due to pulmonary venoconstriction. Pulmonary venoconstriction was confirmed in lungs perfused in a reverse direction from the pulmonary vein to the artery (n = 5), as evidenced by marked precapillary vasoconstriction and a sustained lung weight loss. Furthermore, in lungs perfused at a constant blood flow (n = 5), STA2 also caused selective pulmonary venoconstriction. Vascular permeability measured by the capillary filtration coefficient and the isogravimetric Pc at 30 and 60 min after STA2 infusion did not change significantly from baseline in any lungs studied. Moreover, elevation of Pc by raising the venous reservoir of the intact lobes (n = 5) to the same level as the STA2 lungs caused a greater or similar weight gain compared with the STA2 lungs. Thus, we conclude that TxA2 constricts selectively the pulmonary vein resulting in an increase in Pc and lung weight gain without significant changes in vascular permeability in isolated blood-perfused dog lungs.

Animals↗

rBPI23 attenuates endotoxin-induced cardiovascular depression in awake rabbits.

We determined the effect of a recombinant N-terminal fragment of bactericidal/permeability-increasing protein (rBPI23) on hemodynamic and renal sympathetic responses to lethal endotoxemia in unanesthetized rabbits. Endotoxin was continuously infused intravenously (200 micrograms/kg/h) over 120 min with simultaneous infusion of either rBPI23 (3 mg/kg bolus followed by 6 mg/kg/h over 120 min; n = 6) or thaumatin (the same dose as rBPI23), a control cationic protein with a molecular weight and isoelectric point similar to that of rBPI23 (n = 9). Tissue blood flow was also determined using colored microspheres to the left ventricle, renal cortex, liver, and skeletal muscle. Seven of nine animals treated with endotoxin and thaumatin died between 45 and 120 min after start of the infusion, whereas all animals with rBPI23 treatment were alive throughout the entire 2 h experimental period. A transient increase in renal sympathetic nerve activity was observed in the thaumatin-treated animals followed by sympathoinhibition with concomitant decreases in heart rate, blood pressure, and cardiac output. Tissue blood flow to all measured organs gradually decreased in animals receiving endotoxin and thaumatin. However, rBPI23 abolished all these deleterious responses to endotoxin. In conclusion, rBPI23 attenuates the acute lethal sympathoinhibitory and hemodynamic effects of endotoxemia in awake rabbits.

Animals↗

Baroreflex attenuation after hypotension induced by vena caval occlusion in anesthetized dogs.

We determined effects of vena caval occlusion-induced systemic hypotension of 50 mmHg lasting 10 min (VCO) on efferent sympathetic nerve activity (SNA) and sympathetic baroreflex responsiveness. We recorded simultaneously SNA to the kidney (RNA), heart (CNA), spleen (SpNA), and liver (HNA) in anesthetized dogs. Baroreflex sensitivity was assessed using the ratio of a reflex SNA increase to a mean arterial pressure fall, which was also induced by caval occlusion. During VCO, SNA initially and equivocally increased, followed by recovery toward baseline. Cervical vagotomy attenuated the VCO-induced initial sympathoexcitation and subsequently maintained SNA at higher levels than those of intact animals, a finding basically similar to hemorrhagic hypotension [S. Koyama, F. Sawano, Y. Matsuda, Y. Saeki, T. Shibamoto, T. Hayashi, Jr., Y. Matsubayashi, and M. Kawamoto. Am. J. Physiol. 262 (Regulatory Integrative Comp. Physiol. 31): R579-R585, 1992]. At 5 min after releasing VCO, the baroreflex responsiveness was significantly attenuated: RNA, 79 +/- 11%; CNA, 78 +/- 8%; HNA, 60 +/- 16%; SpNA, 81 +/- 13% of the corresponding baseline. Fifteen minutes after VCO, this attenuation disappeared. Either vagotomy or pretreatment with intravenous vasopressin V1 receptor antagonist abolished this baroreflex attenuation. In conclusion, systemic hypotension to 50 mmHg for 10 min causes transient attenuation of sympathetic baroreflex sensitivity due to circulating vasopressin released by unloading of cardiopulmonary receptors during hypotension.

Animals↗

Transfer of rheumatoid arthritis into severe combined immunodeficient mice. The pathogenetic implications of T cell populations oligoclonally expanding in the rheumatoid joints.

To investigate the pathogenicity of T cells infiltrating in the rheumatoid joints, mononuclear cells (MNC), predominantly T cells, isolated from either synovial fluid or synovial tissues of the patients with RA were transferred into severe combined immunodeficient (SCID) mice by intraarticular injections. According to our observations in this experimental system, patients with RA could be classified into at least two groups. In one group of patients, the infiltrating MNC induced synovial hyperplasia in the recipient SCID mice (the positive group). Whereas, in the other group no synovial hyperplasia was observed (the negative group). The induction of synovial hyperplasia observed in the positive group was prevented by an anti-human CD3 antibody (OKT3), indicating T cell mediation. Analysis of T cell receptor (TCR) V beta usage by reverse transcriptase polymerase chain reaction in the infiltrating MNC transferred into SCID mice revealed a marked skew towards the preferential use of certain V beta genes, which was not seen in the peripheral blood MNC, in only the positive group. The patterns of TCR/V beta skew were not uniform among the patients. The analysis of the PCR-amplified genes of such skewed TCR/ V beta by single strand conformational polymorphism showed distinct bands, indicating that the T cell populations expanding in rheumatoid joints of the positive group were oligoclonal. Furthermore, the enrichment of the T cell populations expressing such skewed TCR/V beta by in vitro stimulation of peripheral blood MNC of the patients with the relevant superantigen enabled the induction of synovial hyperplasia in the SCID mice. These results suggest that the pathogenic T cells could be activated locally in rheumatoid joints by certain antigens in some, but not in all patients with RA.

Animals↗

Crossbridge dynamics under various inotropic states in cardiac muscle: evaluation by perturbation analyses.

As is evident in this review, significant advances have been made in the analysis of crossbridge cycling in cardiac muscle. It becomes apparent that the myocardial crossbridge cycling rate is altered by various factors such as: 1) changes in the intracellular constituents (Ca2+, MgATP, MgADP, Pi, and H+), 2) difference in the type of myosin isozyme, and 3) probably, troponin I, C-protein, and MLC2 phosphorylation. The physiological consequences of an altered crossbridge cycling rate may give rise to the changes in the contraction profile during twitch, tension cost (the ratio of ATPase activity to tension), and the thermal economy (the ratio of heat liberated to tension) of cardiac muscle. These findings and implications should be kept in mind when interpreting cardiac performance under different inotropic states.

Calcium↗

Impaired activation of glucose oxidation and NADPH supply in human endothelial cells exposed to H2O2 in high-glucose medium.

The effects of glucose concentration on D-glucose oxidation and reduced nicotinamide adenine dinucleotide phosphate (NADPH) supply were studied during exposure of cultured human umbilical vein endothelial cells to hydrogen peroxide (H2O2). The activation of glucose oxidation via the pentose phosphate pathway (PPP), induced by exposure of cells to 200 mumol/l H2O2 for 1 h, was reduced by 50% (P < 0.01) in cells cultured for 5-7 days in 33 mmol/l D-glucose (HG) versus those cultured in 5.5 mmol/l D-glucose without (NG) or with (HR) 27.5 mmol/l D-raffinose. The intracellular NADPH content in HG cells, but not in NG or HR cells, was decreased by 42% (P < 0.01) by exposing cells to 200 mumol/l H2O2. The decrease in NADPH was dependent on D-glucose concentration in the medium and was prevented in glutathione (GSH)-depleted cells. The latter observation suggests that the decrease in NADPH is associated with activation of the GSH redox cycle. In the presence of 200 mumol/l H2O2, lactate release into the medium, NADH/NAD ratio, and phosphofructokinase activity in HG cells were 56, 53, and 68% greater, respectively, than in the NG group, which indicates that inhibition of glycolysis by H2O2 is less marked in the HG group compared with NG group. These results indicate that activation of the PPP was impaired in endothelial cells cultured under conditions of high-glucose and oxidative stress, resulting in a decreased supply of NADPH to various NADPH-dependent pathways, including the GSH redox cycle.

Adenosine Triphosphate↗

Antiangiogenic substance(s) in a tumor cell line with low metastatic potential originating from the BALB/c mouse liver.

Two cell lines were established from liver cells (BALB/c mouse) exposed to benzo(a)pyrene: one was highly metastatic (G-5) and the other poorly metastatic (G-1) to the lung when subcutaneously implanted. However, there was no difference in lung colonization between G-1 and G-5 cells when they were intravenously injected. When G-1 cells were subcutaneously inoculated on one side of the back of mice followed by a challenge on the other side with G-5 cells 10 days later, the growth of the latter tumor was inhibited and the number of metastatic nodules in the lung was reduced. The functional vascular volume of G-1 tumor was less than the G-5 one. In mice bearing G-1 tumors, the neovascularization of intradermally inoculated G-5 cells was reduced. The conditioned medium from G-1 culture contained an inhibitory activity on the growth of endothelial cells from calf pulmonary artery. The inhibitory substance(s) was heat-stable, trichloroacetic acid-soluble, nondialyzable and resistant to various proteinases. The present results imply that G-1 cells produce an antiangiogenic substance(s), probably a polysaccharide(s), which inhibits the angiogenesis required for growth and metastasis of the G-5 tumor.

Animals↗

Effects of endothelin on serum gastrin level and acid secretion in rats.

Endothelin (ET) is a potent ulcerogen in gastric mucosa. Disordered microcirculation due to vasoconstriction may cause gastric mucosal injury. In a previous study we found ET in gastric mucosal cells, especially chief cells and endocrine cells, and in vascular endothelial cells. Most endocrine cells staining for ET-1 are G cells. This study was done to find whether ET affects G-cell function, particularly gastrin release and acid secretion. ET-1 or ET-3 (5 nmol/kg) was injected i.v. into male Wistar rats. Blood samples were collected just before and 15, 30, or 60 min after injection and serum gastrin levels were assayed by RIA. The effects of BQ123-Na (Banyu), an ET receptor antagonist, pirenzepin, or an intragastric pH of 2 on changes in the gastrin levels brought about by ET-1 were examined. The gastric contents of rats with the pylorus ligated were collected for 1 h and then for the next 4 h after the ET-1 injection, and the acid output was calculated. After ET-1 administration, the gastric mucosa of the pyloric gland area was immunostained with antigastrin. The serum gastrin levels at 15, 30, and 60 min after ET-1 injection (220 +/- 94, 204 +/- 77, and 366 +/- 191 pg/ml, respectively) were significantly higher than those before the injection (75 +/- 18 pg/ml). ET-1 decreased the number of cells stained for gastrin. ET-3 had no effect on gastrin levels. BQ123-Na inhibited the increase in gastrin caused by ET-1, but pirenzepin had no effect. At pH 2, ET-1 had no effect on gastrin. ET-1 decreased acid output (2.6 +/- 2.3 microEq/h and 239 +/- 80 microEq/4 h, respectively) vs. controls (63 +/- 55 microEq/h and 346 +/- 81 microEq/4 h). Therefore, ET-1 increases rat serum gastrin levels, an effect that may be related to its reduction of acidity.

Animals↗

Purification and enzymatic properties of a recombinant fusion protein expressed in Escherichia coli containing the domains of bovine P450 17A and rat NADPH-P450 reductase.

A fusion protein containing the heme domain of bovine cytochrome P450 17A and the flavin domains of rat NADPH-cytochrome P450 reductase has been genetically engineered by linking the modified cDNAs for each gene with the codons for serine and threonine. Transformation of Escherichia coli (DH5 alpha) and growth under defined conditions permits expression of 600-700 nmol of membrane-bound fusion protein per liter of growth medium (approximately 4% of cellular protein). A method has been developed for the solubilization, isolation, and purification to homogeneity of this protein. In the presence of NADPH the purified fusion protein catalyzes the 17 alpha-hydroxylation of progesterone and pregnenolone as well as the conversion of 17 alpha-hydroxypregnenolone to dehydroepiandrosterone. The 17,20-lyase activity is enhanced sixfold by the addition of purified rat liver cytochrome b5. Further, dehydroepiandrosterone is slowly metabolized to a number of additional more polar metabolites while 17 alpha-hydroxy-progesterone is slowly converted to dihydroxy-progesterone metabolites as well as a small amount of androstenedione in a reaction not influenced by cytochrome b5. Use of 5 alpha-pregnan steroids as substrates show the importance of the 3 beta-hydroxyl group for cytochrome b5 stimulated 17,20-lyase activity. Studies investigating the factors affecting electron transport between the flavin and heme domains suggest that the protein exists as a tight complex functioning as a self-contained biocatalytic unit.

Amino Acid Sequence↗

Inhibitory effect of ONO-1078 on specific binding of peptide leukotrienes to human lung crude membrane.

We investigated the effects of ONO-1078, a newly synthesized peptide leukotriene (p-LT antagonist, on the specific binding of radiolabelled [3H]-LTC4, [3H]-LTD4 and [3H]-LTE4 to a human lung crude membrane fraction (HLMF). The binding assay was performed under conditions in which [3H]-LTC4 and [3H]-LTD4 were not metabolized by HLMF; that is, the metabolism of LTC4 to LTD4 or LTE4 was almost completely prevented by pretreating HLMF with 5 mM acivicin at 37 degrees C for 180 min, and metabolism of LTD4 to LTE4 was inhibited by including 5 mM L-cysteine and 5 mM glycine in the assay. [3H]-LTD4 specific binding was potently and concentration-dependently dissociated by ONO-1078. Its potency was 180-fold stronger than that of FPL 55712, a standardized p-LT antagonist, whereas high concentrations of ONO-1078 similar to those of FPL 55712 were required to inhibit [3H]-LTC4 specific binding. The rank order of the inhibitory potencies of p-LT agonists and antagonists for [3H]-LTD4 specific binding was LTD4 > ONO-1078 > LTE4 > LTC4 > FPI 55712. On the other hand, not only high concentrations of ONO-1078 and FPL 55712 but also more than a 100-fold excess of unlabelled LTE4 was required to inhibit [3H]-LTE4 specific binding, indicating that the binding sites do not appear to be receptors of LTE4. From these results, it is suggested that ONO-1078 is a highly potent LTD4 antagonist which is expected to be very effective on bronchial asthma.

Cell Membrane↗

Hepatic vascular response to anaphylaxis in isolated canine liver.

We determined the vascular response to anaphylaxis in isolated canine livers perfused with autologous blood at a constant pressure via the portal vein, with hepatic artery ligation to simplify the vascular system. We also studied the validity of the double occlusion pressure (Pdo) as a measure of the capillary pressure (Pc) in the isolated canine liver. Pdo was compared with Pc measured using the traditional isogravimetric method (Pc,i), and both parameters showed a strong correlation (Pdo = 0.34 + 0.90 Pc,i; r = 0.93; P < 0.01). This indicated that Pdo provided an accurate indication of Pc in the isolated liver. In livers with anaphylaxis induced by the intraportal injection of Ascaris suum antigen (5 mg; 1.0 +/- 0.03 mg/kg body wt), hepatic vascular resistance and Pc (assessed as Pdo) were increased transiently by 29-fold and 3.4 mmHg, respectively, along with a significant increase of liver weight. The ratio of presinusoidal to postsinusoidal vascular resistance decreased from 0.89 +/- 0.05 to 0.36 +/- 0.12, suggesting that hepatic venous constriction was predominant. In livers perfused in the antidromic direction from the hepatic vein to the portal vein, anaphylaxis caused marked presinusoidal vasoconstriction that was consistent with hepatic venoconstriction as well as a significant and sustained decrease of liver weight below the baseline. These results suggest that anaphylaxis produced hepatic weight gain because of an increase in sinusoidal pressure caused by hepatic venoconstriction. Such hepatic venoconstriction may play an important role in the development of portal hypertension and hepatic congestion associated with anaphylactic shock.

Anaphylaxis↗